SPDR Kensho Final Frontiers ETF vs Vertiv Holdings Co — how do they compare? SPDR Kensho Final Frontiers ETF trades at $106.56, while Vertiv Holdings Co trades at $262.5 (market cap $111.97B). The key difference: Vertiv Holdings Co pays a 0.09% dividend while SPDR Kensho Final Frontiers ETF pays none. Which is the better fit depends on your goals.
| ROKT | VRT | |
|---|---|---|
Sector | Sector/Thematic | Technology |
52-Week High | $136.68 | $376.23 |
52-Week Low | $71.62 | $134.84 |
Market Cap | — | $111.97B |
Enterprise Value | — | $112.19B |
Dividend Yield | — | 0.09% |
Signals from Pluang's Aura AI — not financial advice
No Aura AI signal available yet.
Vertiv Holdings (VRT) trades at $290.83, up 3.67% with strong technical bullish signals and consistent earnings beats. The company demonstrates robust fundamentals with 15.09% net margins and 43.94% ROE, supported by data center infrastructure demand. Recent acquisition of UtilityInnovation Group for $1.45 billion positions VRT for AI-driven growth, while analyst consensus shows 95% buy ratings with a $355.17 price target.
Outlook remains positive given AI infrastructure tailwinds and strong execution, though elevated valuation multiples (P/E 65.8) and RSI overbought conditions warrant caution. The stock offers growth exposure to data center expansion but faces competition and execution risks on recent acquisitions.
Trailing returns across standard periods
Latest headlines on both assets
SPDR Kensho Final Frontiers ETF seeks exposure to companies supporting exploration of outer space and the deep sea. Its holdings include businesses involved in aerospace, defense, communications, research, and related technologies.
Read more on ROKT →Vertiv is a global leader in critical digital infrastructure, providing essential power, cooling, and IT management solutions for data centers, communication networks, and industrial facilities. As the primary provider of advanced thermal management and liquid cooling systems, Vertiv is a central player in the AI revolution, enabling the extreme density and power requirements of next-generation GPU-driven computing.
Read more on VRT →